Screening dental implant design parameters for effect on the fatigue limit of reduced-diameter implants

IF 4.6 1区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Megha Satpathy , Matthew Loeb , Rose M. Jose , Matthew J. Sinclair , Yuanyuan Duan , Susana M. Salazar Marocho , Michael D. Roach , Jason A. Griggs
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Abstract

Objectives

This study screened the design parameters of a reduced-diameter implant to determine which parameters have the most significant effect on the implant fatigue limit.

Methods

A dental implant assembly, which included an implant body (Biomet 3i), an abutment (GingiHue®), and an abutment screw (Gold-Tite Square screw) was scanned using micro-computed tomography (SkyScan 1172) and was measured using Mimics (Materialise) and an optical microscope (VHX-1000, Keyence). Sixteen design parameters were measured, and the values of the commercial design were taken as reference level for each design parameter. Values up to 20 % lower and 20 % higher than the reference were explored using a Taguchi orthogonal array (DOE++, Reliasoft), which varies more than one design parameter at a time to efficiently explore all main effects and lower order interactions across few implant designs. Solid models of these 27 implant designs and the reference design were constructed using SOLIDWORKS (Dassault Systèmes). Each solid model was loaded according to ISO 14801. fe-safe (Dassault Systèmes) was used to estimate the fatigue limits. ANOVA statistical test in DOE++ was used to screen the design parameters.

Results

Interaction between the coronal and apical tapers of the implant body had a significant effect on the fatigue limit (p ≤ 0.05), where fatigue limit was low for designs with a constant taper. Conversely, the combination of high degree of apical taper and low degree of coronal taper lead to the highest fatigue limit.

Significance

Using a Taguchi orthogonal array proved to be an efficient strategy for screening implant design parameters for effect on fatigue limit. The modified implant designed by manipulating the most influential parameters is predicted to have much greater fatigue limit compared to the commercially available design.
牙种植体设计参数筛选对小直径种植体疲劳极限的影响。
目的:筛选小直径种植体的设计参数,确定哪些参数对种植体的疲劳极限影响最大。方法:使用微型计算机断层扫描(SkyScan 1172)扫描种植体(Biomet 3i)、基牙(GingiHue®)和基牙螺钉(Gold-Tite Square螺钉),并使用Mimics (Materialise)和光学显微镜(VHX-1000, Keyence)进行测量。测量了16个设计参数,并将商业设计的值作为每个设计参数的参考水平。使用田口正交阵列(DOE++, Reliasoft)研究了比参考值低20% %和高20% %的值,该阵列一次改变多个设计参数,以有效地探索所有主要效应和跨少数种植体设计的低阶相互作用。使用SOLIDWORKS (Dassault systemmes)软件构建27种种植体设计和参考设计的实体模型。每个实体模型都按照ISO 14801进行加载。使用fe-safe (Dassault systemmes)来估计疲劳极限。采用doe++中的ANOVA统计检验筛选设计参数。结果:种植体冠状锥度和根尖锥度之间的相互作用对疲劳极限有显著影响(p ≤ 0.05),其中锥度恒定的设计的疲劳极限较低。反之,高顶点锥度和低顶点锥度的组合产生最高的疲劳极限。意义:使用田口正交阵列被证明是筛选植入物设计参数对疲劳极限影响的有效策略。与市售设计相比,通过操纵最具影响力的参数设计的改良植入物预计具有更高的疲劳极限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Dental Materials
Dental Materials 工程技术-材料科学:生物材料
CiteScore
9.80
自引率
10.00%
发文量
290
审稿时长
67 days
期刊介绍: Dental Materials publishes original research, review articles, and short communications. Academy of Dental Materials members click here to register for free access to Dental Materials online. The principal aim of Dental Materials is to promote rapid communication of scientific information between academia, industry, and the dental practitioner. Original Manuscripts on clinical and laboratory research of basic and applied character which focus on the properties or performance of dental materials or the reaction of host tissues to materials are given priority publication. Other acceptable topics include application technology in clinical dentistry and dental laboratory technology. Comprehensive reviews and editorial commentaries on pertinent subjects will be considered.
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